Semaxanib (SU5416)

Catalog No.S2845 Batch:S284503

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Technical Data

Formula

C15H14N2O

Molecular Weight 238.28 CAS No. 204005-46-9
Solubility (25°C)* In vitro DMF 100 mg/mL (419.67 mM)
DMSO 20 mg/mL (83.93 mM)
Ethanol 4 mg/mL (16.78 mM)
In vivo (Add solvents to the product individually and in order)
Homogeneous suspension
CMC-NA
≥5mg/ml Taking the 1 mL working solution as an example, add 5 mg of this product to 1 ml of CMC-Na solution, mix evenly to obtain a homogeneous suspension with a final concentration of 5 mg/ml.
Clear solution
5%DMSO 40%PEG300 5%Tween80 50%ddH2O

Validated by Selleck labs. Should you need adjustments to this formulation, contact our sales team for custom testing.

0.500mg/ml (2.10mM) Taking the 1 mL working solution as an example, add 50 μL of 10 mg/ml clarified DMSO stock solution to 400 μL of PEG300, mix evenly to clarify it; add 50 μL of Tween80 to the above system, mix evenly to clarify it; then continue to add 500 μL of ddH2O to adjust the volume to 1 mL. The mixed solution should be used immediately for optimal results. 
Clear solution
10% DMF 40% PEG 300 5%Tween80 45%ddH2O

Validated by Selleck labs. Should you need adjustments to this formulation, contact our sales team for custom testing.

3.300mg/ml (13.85mM) Taking the 1 mL working solution as an example, add 100μL of 33mg/ml clarified DMF stock solution to 400μL of PEG300, mix evenly to clarify it; add 50μL of Tween80 to the above system, mix evenly to clarify it; then continue to add 450μL of ddH2O to adjust the volume to 1mL. The mixed solution should be used immediately for optimal results. 
* <1 mg/ml means slightly soluble or insoluble.
* Please note that Selleck tests the solubility of all compounds in-house, and the actual solubility may differ slightly from published values. This is normal and is due to slight batch-to-batch variations.
* Room temperature shipping (Stability testing shows this product can be shipped without any cooling measures.)

Preparing Stock Solutions

Biological Activity

Description Semaxanib (SU5416, semaxinib) is a potent and selective VEGFR(Flk-1/KDR) inhibitor with IC50 of 1.23 μM, 20-fold more selective for VEGFR than PDGFRβ, lack of activity against EGFR, InsR and FGFR. Phase 3.Semaxanib (SU5416) can be used to induce animal models of chronic intermittent hypoxia.
Targets
VEGFR2/Flk1 [1]
(Cell-free assay)
1.23 μM
In vitro Semaxanib inhibits VEGF-dependent phosphorylation of the Flk-1 receptor in Flk-1-overexpressing NIH 3T3 cells with IC50 of 1.04 μM. Semaxanib inhibits PDGF-dependent autophosphorylation in NIH 3T3 cells with IC50 of 20.3 μM. Semaxanib inhibits VEGF- and FGF-driven mitogenesis in a dose-dependent manner with IC50 of 0.04 and 50 μM, respectively. Semaxanib treatment has no effect on the in vitro growth of C6 glioma, Calu 6 lung carcinoma, A375 melanoma, A431 epidermoid carcinoma, and SF767T glioma cells (all IC50s > 20 μM). [1]
In vivo Semaxanib dose-related inhibits growth of A375 tumor in vivo. A >85% inhibition of subcutaneous tumor growth is observed with daily i.p. administration of SU5416 in DMSO at Semaxanib, without measurable toxicity. Semaxanib shows broad spectrum antitumor activity. SU5416 significantly inhibits the subcutaneous growth of 8 of 10 tumor lines tested (A431, Calu-6, C6, LNCAP, EPH4-VEGF, 3T3HER2, 488G2M2 and SF763T cells) with an average mortality rate of 2.5%. [1] Semaxanib (25 mg/kg/day) displays potent antiangiogenic activity, resulting in a significant reduction of both the total and functional vascular density of the tumor microvasculature. [2]

Protocol (from reference)

Kinase Assay:[1]
  • Biochemical kinase assays

    Solubilized membranes from 3T3 Flk-1 cells are added to polystyrene ELISA plates that had been precoated with a monoclonal antibody that recognizes Flk-1. After an overnight incubation with lysate at 4 ℃, serial dilutions of SU5416 are added to the immunolocalized receptor. To induce autophosphorylation of the receptor, various concentrations of ATP are added to the ELISA plate wells containing serially diluted solutions of SU5416. The autophosphorylation is allowed to proceed for 60 min at room temperature and then stopped with EDTA. The amount of phosphotyrosine present on the Flk-1 receptors in the individual wells is determined by incubating the immunolocalized receptor with a biotinylated monoclonal antibody directed against phosphotyrosine. After removal of the unbound anti-phosphotyrosine antibody, avidin-conjugated horseradish pero-idase H is added to the wells. A stabilized form of 3,3 9,5,5 9-tetramethyl benzidine dihydrochloride and H2O2 is added to the wells. The color readout of the assay is allowed to develop for 30 min, and the reaction is stopped with H2SO4.

Cell Assay:[1]
  • Cell lines

    HUVECs

  • Concentrations

    ~100 μM

  • Incubation Time

    2 days

  • Method

    HUVECs are plated in 96-well, flat-bottomed plates (1×104 cells/100 μL/well) in F-12K media containing 0.5% heat-inactivated FBS and cultured at 37 ℃ for 24 h to quiesce the cells. Serial dilutions of compounds prepared in medium containing 1% DMSO are then added for 2 h, followed by the addition of mitogenic concentrations of either VEGF at 5 ng/mL or 20 ng/mL or acidic fibroblast growth factor at 0.25–5 ng/mL in media. The final concentration of DMSO in the assay is 0.25%. After 24 h, either [3H]thymidine (1 μCi/well) or BrdUrd is added, and the cell monolayers are incubated for another 24 h. The uptake of either [3H]thymidine or BrdUrd into cells is quantitated using a liquid scintillation counter or a BrdUrd ELISA, respectively.

Animal Study:[1]
  • Animal Models

    Human melanoma xenografts A375

  • Dosages

    25 mg/kg

  • Administration

    i.p. daily

References

  • https://pubmed.ncbi.nlm.nih.gov/9892193/
  • https://pubmed.ncbi.nlm.nih.gov/10935468/

Customer Product Validation

Injected tumor cells move to the tail via blood vessels. Tg (flil1:egfp) embryos at 20 hpf were treated with 2 μM SU5416 for 1 hr (+SU5416) to inhibit vasculogenesis24; the control fish were treated with 0.02% DMSO for 1 hr (-SU5416). After 1 hr, SU5416 or DMSO was washed out by changing fish media. At 48 hpf, tfRFP-B16 cells were injected into the pericardium cavity of fish. Representative images show that tumor cells moved to the tail in a drug-free larva, while no tumor cells moved to the tail in a drug-treated larva after new vessels were inhibited by SU5416. Insets are enlarged images from each corresponding tip of the tail indicated by white arrows. Dashed white lines mark extravasated tumor cells at 12 hpi. Vessels are green and tumor cells are red. –SU5416, 6 other larvae exhibit similar behaviors; +SU5416, 3 other larvae exhibit similar behaviors. Scale bars, 500 μm. Insets, 100 μm.

Data from [ , , Sci Rep, 2016, 6:19304. ]

HUVEC spheroids embedded in fibrin gel were incubated with a pool of PDR vitreous fluid samples (1:4 dilution) in the absence or in the presence of different extracellular pathway. Formation of radiallygrowing sprouts was evaluated after 24 h of incubation. Data are the mean ± S.E.M. of 30 spheroids per experimental point. *p《0.05, **p《0.01 versus PDR vitreous

Data from [ , , Angiogenesis, 2017, 20(4):629-640 ]

VEGFR inhibition mitigates JNA fibroblast-induced tubule formation in HUVECS. (A) HUVEC tubule formation was assessed in the presence of JNA CM or SFM with or without SU5416 or vehicle control (DMSO). The photograph represents characteristic HUVEC tubules in each treatment group. (B) HUVECs were plated on a layer of Matrigel in the presence of SFM or JNA CM and subsequently treated with vehicle control (DMSO) or SU5416 at an IC50 concentration of 1.23µM. After a 6-hour incubation at 37°C, the HUVECs were examined under magnification ×100 and tubule formation and length were assessed using Pipeline software. The experiment was repeated 3 times. CM = conditioned media; DMSO = dimethylsulfoxide; HUVEC = human umbilical vein endothelial cell; IC50 = the dose that is cytotoxic to 50% of the cells treated in vitro; JNA = juvenile nasopharyngeal angiofibroma; SFM = serum-free media.

Data from [ , , Int Forum Allergy Rhinol, 2017, 7(10):973-979 ]

Selleck's Semaxanib (SU5416) Has Been Cited by 24 Publications

LONP1 facilitates pulmonary artery smooth muscle cell glycolytic reprogramming by degrading MPC1 in pulmonary hypertension [ Clin Sci (Lond), 2025, 139(10)CS20255922] PubMed: 40332105
APOE- ε4-induced Fibronectin at the blood-brain barrier is a conserved pathological mediator of disrupted astrocyte-endothelia interaction in Alzheimer's disease [ bioRxiv, 2025, 2025.01.24.634732] PubMed: 39975303
Gliovascular transcriptional perturbations in Alzheimer's disease reveal molecular mechanisms of blood brain barrier dysfunction [ Nat Commun, 2024, 15(1):4758] PubMed: 38902234
Gliovascular transcriptional perturbations in Alzheimer's disease reveal molecular mechanisms of blood brain barrier dysfunction [ Nat Commun, 2024, 15(1):4758] PubMed: 38902234
Gliovascular transcriptional perturbations in Alzheimer's disease reveal molecular mechanisms of blood brain barrier dysfunction [ Nat Commun, 2024, 15(1):4758] PubMed: 38902234
Endothelial Slc35a1 Deficiency Causes Loss of LSEC Identity and Exacerbates Neonatal Lipid Deposition in the Liver in Mice [ Cell Mol Gastroenterol Hepatol, 2024, 17(6):1039-1061] PubMed: 38467191
Endothelial Slc35a1 Deficiency Causes Loss of LSEC Identity and Exacerbates Neonatal Lipid Deposition in the Liver in Mice [ Cell Mol Gastroenterol Hepatol, 2024, 17(6):1039-1061] PubMed: 38467191
A novel twelve-gene signature to predict neoadjuvant chemotherapy response and prognosis in breast cancer [ Front Immunol, 2022, 13:1035667] PubMed: 36341435
VEGF Modulates Neurogenesis and Microvascular Remodeling in Epileptogenesis After Status Epilepticus in Immature Rats [ Front Neurol, 2021, 12:808568] PubMed: 35002944
PKR deficiency alleviates pulmonary hypertension via inducing inflammasome adaptor ASC inactivation [ Pulm Circ, 2021, 11(4):20458940211046156] PubMed: 34540200

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